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Evaluation of cure shrinkage measurement techniques for thermosetting resins

机译:热固性树脂固化收缩率测量技术的评估

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摘要

Resin chemical shrinkage dictates the surface integrity and the roughness of a composite structure. Thus, to minimize surface failures and to produce a good surface quality it is a requisite to be able to measure and track resin shrinkage during the cure process. This manuscript investigates and evaluates the measuring and monitoring of real-time resin shrinkage using a rheometer, a helium-based pycnometer and a thermo-mechanical analyzer (TMA) for ambient curing UP and epoxy resins. Shrinkage readings obtained from the newly developed robust technique with the rheometer concur well with readings from the traditional pycnometric method. They also coincide within the accepted literature values of 7–10% and 3.5–4.5% for the UP and epoxy systems, respectively. Shrinkage measurements during post-cure were effectively carried out at an elevated temperature, suggesting that the methodology provided can be applied to non-ambient curing systems. The TMA was found to be unsuccessful in measuring shrinkage reliably.
机译:树脂的化学收缩率决定了复合结构的表面完整性和粗糙度。因此,为了使表面缺陷最小化并产生良好的表面质量,必须能够在固化过程中测量和跟踪树脂的收缩率。该手稿使用流变仪,氦基比重瓶和热机械分析仪(TMA)进行环境固化和环氧树脂的研究,并评估和评估实时树脂收缩率。流变仪最新开发的稳健技术获得的收缩率读数与传统比重瓶法得出的收缩率读数非常吻合。在UP和环氧体系的公认文献值分别为7-10%和3.5-4.5%的范围内,它们也是一致的。后固化过程中的收缩率测量有效地在升高的温度下进行,这表明所提供的方法可以应用于非环境固化系统。发现TMA无法可靠地测量收缩率。

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